Stable analogs of peptide and polypeptide therapeutics
The present invention relates to compositions of peptide and polypeptide analogs that are resistant to proteolysis, pharmaceutical uses thereof, and methods of preparation thereof.
1. A proteinase-resistant analog of a biologically active peptide or polypeptide factor, which peptide or polypeptide factor has an amino acid sequence including a proteinase substrate sequence P 2 -P 1 -P′ 1 that is cleaved under physiological conditions by dipeptidyl peptidase IV (DPP IV), wherein said analog has an amino acid sequence corresponding to said peptide or polypeptide factor where the P′ 1 residue of said proteinase substrate sequence is replaced with an amino acid analog having a tetrasubstituted Cβ carbon, which P′ 1 residue replacement reduces the susceptibility of the analog to cleavage by DPP IV relative to said peptide or polypeptide factor;
P 2 is the N-terminal residue of the peptide or polypeptide factor;
the peptide or polypeptide factor is capable of binding a GLP-1, GLP-2, GIP, NPY, PP, or PYY receptor;
the analog of the peptide or polypeptide factor is capable of binding a GLP-1, GLP-2, GIP, NPY, PP, or PYY receptor, and has an amino acid sequence at least 90% identical to GLP-1 (7-37) (SEQ ID NO:1), GLP-1 (7-36)NH 2 (SEQ ID NO:2), GLP-2 (SEQ ID NO:3), GIP (SEQ ID NO:4), NPY (SEQ ID NO:5), PP (SEQ ID NO:6), or PYY (SEQ ID NO:7); and
the amino acid analog has the structure shown in Formula II:
wherein
R 1 and R 2 are independently lower alkyl or halogen;
R 3 is lower alkyl, aryl, hydroxyl, —(CH 2 ) m —COOH, —(CH 2 ) m —NH 2 , —(CH 2 ) m —N—C(═NH)NH 2 , —(CH 2 ) m —C(═O)NH 2 , —SH, or —(CH 2 ) m —S—CH 3 ; and
mis 0,1, or 2.
2. The analog of claim 1 , wherein R 1 and R 2 are independently selected from the group consisting of methyl, ethyl, and propyl.
3. The analog of claim 1 , wherein R 1 and R 2 are methyl.
4. The analog of claim 1 , wherein R 3 is lower alkyl.
5. The analog of claim 1 , wherein R 3 is methyl, ethyl, or propyl.
6. The analog of claim 1 , wherein R 3 is methyl.
7. The analog of claim 1 , wherein R 1 , R 2 , and R 3 are each methyl.
8. The analog of claim 1 , wherein R 3 is selected from the group consisting of lower alkyl, phenyl, hydroxyphenyl, indole, imidazole, hydroxyl, —COOH, —CH 2 COOH, —CH 2 CH 2 NC(═NH)NH 2 , —CH 2 C(═O)NH 2 , —CH 2 CH 2 C(═O)NH 2 , —SH, and —CH 2 SCH 3 .
9. The analog of claim 1 , wherein R 3 is selected from the group consisting of —CH 2 CH 2 NC(═NH)NH 2 , —CH 2 C(═O)NH 2 , —CH 2 CH 2 C(═O)NH 2 , —SH, and —CH 2 SCH 3 .
10. The analog of claim 1 , wherein R 1 and R 2 are independently selected from the group consisting of methyl, ethyl, and propyl; and R 3 is selected from the group consisting of lower alkyl, phenyl, hydroxyphenyl, indole, imidazole, hydroxyl, —COOH, —CH 2 COOH, —CH 2 CH 2 NC(═NH)NH 2 , —CH 2 C(═O)NH 2 , —CH 2 CH 2 C(═O)NH 2 , —SH, and —CH 2 SCH 3 .
11. The analog of claim 1 , wherein R 1 and R 2 are both methyl; and
R 3 is selected from the group consisting of lower alkyl, phenyl, hydroxyphenyl, indole, imidazole, hydroxyl, —COOH, —CH 2 COOH, —CH 2 CH 2 NC(═NH)NH 2 , —CH 2 C(═O)NH 2 , —CH 2 CH 2 C (═O)NH 2 , —SH, and —CH 2 SCH 3 .
12. The analog of claim 1 , wherein R 1 and R 2 are both methyl; and R 3 is —COOH or —CH 2 COOH.
13. The analog of claim 1 , wherein R 1 and R 2 are both methyl; and R 3 is selected from the group consisting of —CH 2 CH 2 NC(═NH)NH 2 , —CH 2 C(═O)NH 2 , —CH 2 CH 2 C(═O)NH 2 , —SH, and —CH 2 SCH 3 .
14. The analog of claim 13 , wherein R 3 is —CH 2 C(═O)NH 2 .
15. The analog of claim 1 , wherein the peptide or polypeptide factor is capable of binding a GLP-1 receptor; and the analog of the peptide or polypeptide factor is capable of binding a GLP-1 receptor, and has an amino acid sequence at least 90% identical to GLP-1 (7-37) (SEQ ID NO:1) or GLP-1 (7-36)NH 2 (SEQ ID NO:2).